Energy Efficient Topology Control Algorithms for Variant Rate Mobile Sensor Networks

Jianbo Li, Liusheng Huang, Mingjun Xiao
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引用次数: 9

Abstract

Although topology control has been extensively studied for stationary sensor networks, few theoretical results on topology control for mobile sensor networks (MSN) have been reported yet. In this paper, we propose two O(n3) time topology control algorithms, centralized and distributed versions respectively, under a variant rate mobile network model (VRMN). In VRMN each sensor node may move at a variant speed and associated with each node is its starting and ending positions in the unit time interval. Our algorithms are proactive such that it can guarantee the topology of a given instance of MSN can continuously connected in the unit time interval, regardless of how much the moving speeds of the sensor nodes are. Extensive simulations have been conducted and the simulation results reveal that the resultant topology after applying our distributed topology control algorithm shows good performances in terms of average transmission radius and connectivity.
变速率移动传感器网络的高能效拓扑控制算法
虽然对于静止传感器网络的拓扑控制已经有了广泛的研究,但是对于移动传感器网络拓扑控制的理论研究却很少。本文在变速率移动网络模型(VRMN)下,分别提出了集中式和分布式两种O(n3)时间拓扑控制算法。在VRMN中,每个传感器节点可以以不同的速度移动,每个节点在单位时间间隔内的起始和结束位置与每个节点相关联。我们的算法是主动的,这样它可以保证给定的MSN实例的拓扑可以在单位时间间隔内连续连接,而不管传感器节点的移动速度有多快。仿真结果表明,采用分布式拓扑控制算法后得到的拓扑在平均传输半径和连通性方面具有良好的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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